mirror of
https://github.com/AsahiLinux/u-boot
synced 2024-12-01 00:49:43 +00:00
9a3a49fb00
Since nand boot have some limit for the first 4KB, We only disable the LED function to reduce the code space. At the same time, Fix the compile error for LED function undefined in the compile time of nand_spl. Signed-off-by: Zhong Hongbo <bocui107@gmail.com> Signed-off-by: Minkyu Kang <mk7.kang@samsung.com>
578 lines
13 KiB
ArmAsm
578 lines
13 KiB
ArmAsm
/*
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* armboot - Startup Code for ARM1176 CPU-core
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*
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* Copyright (c) 2007 Samsung Electronics
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*
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* Copyright (C) 2008
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* Guennadi Liakhovetki, DENX Software Engineering, <lg@denx.de>
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*
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* See file CREDITS for list of people who contributed to this
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* project.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of
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* the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston,
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* MA 02111-1307 USA
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*
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* 2007-09-21 - Restructured codes by jsgood (jsgood.yang@samsung.com)
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* 2007-09-21 - Added MoviNAND and OneNAND boot codes by
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* jsgood (jsgood.yang@samsung.com)
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* Base codes by scsuh (sc.suh)
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*/
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#include <asm-offsets.h>
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#include <config.h>
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#include <version.h>
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#ifdef CONFIG_ENABLE_MMU
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#include <asm/proc/domain.h>
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#endif
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#if !defined(CONFIG_ENABLE_MMU) && !defined(CONFIG_SYS_PHY_UBOOT_BASE)
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#define CONFIG_SYS_PHY_UBOOT_BASE CONFIG_SYS_UBOOT_BASE
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#endif
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/*
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*************************************************************************
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*
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* Jump vector table as in table 3.1 in [1]
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*
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*************************************************************************
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*/
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.globl _start
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_start: b reset
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#ifndef CONFIG_NAND_SPL
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ldr pc, _undefined_instruction
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ldr pc, _software_interrupt
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ldr pc, _prefetch_abort
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ldr pc, _data_abort
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ldr pc, _not_used
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ldr pc, _irq
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ldr pc, _fiq
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_undefined_instruction:
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.word undefined_instruction
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_software_interrupt:
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.word software_interrupt
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_prefetch_abort:
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.word prefetch_abort
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_data_abort:
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.word data_abort
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_not_used:
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.word not_used
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_irq:
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.word irq
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_fiq:
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.word fiq
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_pad:
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.word 0x12345678 /* now 16*4=64 */
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#else
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. = _start + 64
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#endif
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.global _end_vect
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_end_vect:
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.balignl 16,0xdeadbeef
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/*
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*************************************************************************
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*
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* Startup Code (reset vector)
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*
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* do important init only if we don't start from memory!
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* setup Memory and board specific bits prior to relocation.
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* relocate armboot to ram
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* setup stack
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*
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*************************************************************************
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*/
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.globl _TEXT_BASE
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_TEXT_BASE:
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.word CONFIG_SYS_TEXT_BASE
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/*
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* Below variable is very important because we use MMU in U-Boot.
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* Without it, we cannot run code correctly before MMU is ON.
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* by scsuh.
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*/
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_TEXT_PHY_BASE:
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.word CONFIG_SYS_PHY_UBOOT_BASE
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/*
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* These are defined in the board-specific linker script.
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* Subtracting _start from them lets the linker put their
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* relative position in the executable instead of leaving
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* them null.
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*/
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.globl _bss_start_ofs
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_bss_start_ofs:
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.word __bss_start - _start
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.globl _bss_end_ofs
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_bss_end_ofs:
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.word __bss_end__ - _start
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.globl _end_ofs
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_end_ofs:
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.word _end - _start
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/* IRQ stack memory (calculated at run-time) + 8 bytes */
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.globl IRQ_STACK_START_IN
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IRQ_STACK_START_IN:
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.word 0x0badc0de
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/*
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* the actual reset code
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*/
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reset:
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/*
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* set the cpu to SVC32 mode
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*/
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mrs r0, cpsr
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bic r0, r0, #0x3f
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orr r0, r0, #0xd3
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msr cpsr, r0
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/*
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*************************************************************************
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*
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* CPU_init_critical registers
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*
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* setup important registers
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* setup memory timing
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*
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*************************************************************************
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*/
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/*
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* we do sys-critical inits only at reboot,
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* not when booting from ram!
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*/
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cpu_init_crit:
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/*
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* When booting from NAND - it has definitely been a reset, so, no need
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* to flush caches and disable the MMU
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*/
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#ifndef CONFIG_NAND_SPL
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/*
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* flush v4 I/D caches
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*/
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mov r0, #0
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mcr p15, 0, r0, c7, c7, 0 /* flush v3/v4 cache */
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mcr p15, 0, r0, c8, c7, 0 /* flush v4 TLB */
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/*
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* disable MMU stuff and caches
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*/
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mrc p15, 0, r0, c1, c0, 0
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bic r0, r0, #0x00002300 @ clear bits 13, 9:8 (--V- --RS)
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bic r0, r0, #0x00000087 @ clear bits 7, 2:0 (B--- -CAM)
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orr r0, r0, #0x00000002 @ set bit 2 (A) Align
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orr r0, r0, #0x00001000 @ set bit 12 (I) I-Cache
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/* Prepare to disable the MMU */
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adr r2, mmu_disable_phys
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sub r2, r2, #(CONFIG_SYS_PHY_UBOOT_BASE - CONFIG_SYS_TEXT_BASE)
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b mmu_disable
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.align 5
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/* Run in a single cache-line */
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mmu_disable:
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mcr p15, 0, r0, c1, c0, 0
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nop
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nop
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mov pc, r2
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mmu_disable_phys:
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#ifdef CONFIG_DISABLE_TCM
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/*
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* Disable the TCMs
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*/
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mrc p15, 0, r0, c0, c0, 2 /* Return TCM details */
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cmp r0, #0
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beq skip_tcmdisable
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mov r1, #0
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mov r2, #1
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tst r0, r2
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mcrne p15, 0, r1, c9, c1, 1 /* Disable Instruction TCM if present*/
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tst r0, r2, LSL #16
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mcrne p15, 0, r1, c9, c1, 0 /* Disable Data TCM if present*/
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skip_tcmdisable:
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#endif
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#endif
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#ifdef CONFIG_PERIPORT_REMAP
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/* Peri port setup */
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ldr r0, =CONFIG_PERIPORT_BASE
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orr r0, r0, #CONFIG_PERIPORT_SIZE
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mcr p15,0,r0,c15,c2,4
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#endif
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/*
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* Go setup Memory and board specific bits prior to relocation.
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*/
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bl lowlevel_init /* go setup pll,mux,memory */
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/* Set stackpointer in internal RAM to call board_init_f */
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call_board_init_f:
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ldr sp, =(CONFIG_SYS_INIT_SP_ADDR)
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bic sp, sp, #7 /* 8-byte alignment for ABI compliance */
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ldr r0,=0x00000000
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bl board_init_f
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/*------------------------------------------------------------------------------*/
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/*
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* void relocate_code (addr_sp, gd, addr_moni)
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*
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* This "function" does not return, instead it continues in RAM
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* after relocating the monitor code.
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*
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*/
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.globl relocate_code
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relocate_code:
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mov r4, r0 /* save addr_sp */
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mov r5, r1 /* save addr of gd */
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mov r6, r2 /* save addr of destination */
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/* Set up the stack */
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stack_setup:
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mov sp, r4
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adr r0, _start
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cmp r0, r6
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beq clear_bss /* skip relocation */
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mov r1, r6 /* r1 <- scratch for copy_loop */
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ldr r3, _bss_start_ofs
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add r2, r0, r3 /* r2 <- source end address */
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copy_loop:
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ldmia r0!, {r9-r10} /* copy from source address [r0] */
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stmia r1!, {r9-r10} /* copy to target address [r1] */
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cmp r0, r2 /* until source end address [r2] */
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blo copy_loop
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#ifndef CONFIG_PRELOADER
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/*
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* fix .rel.dyn relocations
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*/
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ldr r0, _TEXT_BASE /* r0 <- Text base */
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sub r9, r6, r0 /* r9 <- relocation offset */
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ldr r10, _dynsym_start_ofs /* r10 <- sym table ofs */
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add r10, r10, r0 /* r10 <- sym table in FLASH */
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ldr r2, _rel_dyn_start_ofs /* r2 <- rel dyn start ofs */
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add r2, r2, r0 /* r2 <- rel dyn start in FLASH */
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ldr r3, _rel_dyn_end_ofs /* r3 <- rel dyn end ofs */
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add r3, r3, r0 /* r3 <- rel dyn end in FLASH */
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fixloop:
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ldr r0, [r2] /* r0 <- location to fix up, IN FLASH! */
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add r0, r0, r9 /* r0 <- location to fix up in RAM */
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ldr r1, [r2, #4]
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and r7, r1, #0xff
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cmp r7, #23 /* relative fixup? */
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beq fixrel
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cmp r7, #2 /* absolute fixup? */
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beq fixabs
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/* ignore unknown type of fixup */
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b fixnext
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fixabs:
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/* absolute fix: set location to (offset) symbol value */
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mov r1, r1, LSR #4 /* r1 <- symbol index in .dynsym */
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add r1, r10, r1 /* r1 <- address of symbol in table */
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ldr r1, [r1, #4] /* r1 <- symbol value */
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add r1, r1, r9 /* r1 <- relocated sym addr */
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b fixnext
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fixrel:
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/* relative fix: increase location by offset */
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ldr r1, [r0]
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add r1, r1, r9
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fixnext:
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str r1, [r0]
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add r2, r2, #8 /* each rel.dyn entry is 8 bytes */
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cmp r2, r3
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blo fixloop
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#endif
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#ifdef CONFIG_ENABLE_MMU
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enable_mmu:
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/* enable domain access */
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ldr r5, =0x0000ffff
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mcr p15, 0, r5, c3, c0, 0 /* load domain access register */
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/* Set the TTB register */
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ldr r0, _mmu_table_base
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ldr r1, =CONFIG_SYS_PHY_UBOOT_BASE
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ldr r2, =0xfff00000
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bic r0, r0, r2
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orr r1, r0, r1
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mcr p15, 0, r1, c2, c0, 0
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/* Enable the MMU */
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mrc p15, 0, r0, c1, c0, 0
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orr r0, r0, #1 /* Set CR_M to enable MMU */
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/* Prepare to enable the MMU */
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adr r1, skip_hw_init
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and r1, r1, #0x3fc
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ldr r2, _TEXT_BASE
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ldr r3, =0xfff00000
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and r2, r2, r3
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orr r2, r2, r1
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b mmu_enable
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.align 5
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/* Run in a single cache-line */
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mmu_enable:
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mcr p15, 0, r0, c1, c0, 0
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nop
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nop
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mov pc, r2
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skip_hw_init:
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#endif
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clear_bss:
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#ifndef CONFIG_PRELOADER
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ldr r0, _bss_start_ofs
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ldr r1, _bss_end_ofs
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mov r4, r6 /* reloc addr */
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add r0, r0, r4
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add r1, r1, r4
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mov r2, #0x00000000 /* clear */
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clbss_l:str r2, [r0] /* clear loop... */
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add r0, r0, #4
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cmp r0, r1
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bne clbss_l
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#ifndef CONFIG_NAND_SPL
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bl coloured_LED_init
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bl red_LED_on
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#endif
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#endif
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/*
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* We are done. Do not return, instead branch to second part of board
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* initialization, now running from RAM.
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*/
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#ifdef CONFIG_NAND_SPL
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ldr pc, _nand_boot
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_nand_boot: .word nand_boot
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#else
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ldr r0, _board_init_r_ofs
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adr r1, _start
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add lr, r0, r1
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add lr, lr, r9
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/* setup parameters for board_init_r */
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mov r0, r5 /* gd_t */
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mov r1, r6 /* dest_addr */
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/* jump to it ... */
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mov pc, lr
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_board_init_r_ofs:
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.word board_init_r - _start
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#endif
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_rel_dyn_start_ofs:
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.word __rel_dyn_start - _start
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_rel_dyn_end_ofs:
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.word __rel_dyn_end - _start
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_dynsym_start_ofs:
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.word __dynsym_start - _start
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#ifdef CONFIG_ENABLE_MMU
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_mmu_table_base:
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.word mmu_table
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#endif
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#ifndef CONFIG_NAND_SPL
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/*
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* we assume that cache operation is done before. (eg. cleanup_before_linux())
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* actually, we don't need to do anything about cache if not use d-cache in
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* U-Boot. So, in this function we clean only MMU. by scsuh
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*
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* void theLastJump(void *kernel, int arch_num, uint boot_params);
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*/
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#ifdef CONFIG_ENABLE_MMU
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.globl theLastJump
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theLastJump:
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mov r9, r0
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ldr r3, =0xfff00000
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ldr r4, _TEXT_PHY_BASE
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adr r5, phy_last_jump
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bic r5, r5, r3
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orr r5, r5, r4
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mov pc, r5
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phy_last_jump:
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/*
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* disable MMU stuff
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*/
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mrc p15, 0, r0, c1, c0, 0
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bic r0, r0, #0x00002300 /* clear bits 13, 9:8 (--V- --RS) */
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bic r0, r0, #0x00000087 /* clear bits 7, 2:0 (B--- -CAM) */
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orr r0, r0, #0x00000002 /* set bit 2 (A) Align */
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orr r0, r0, #0x00001000 /* set bit 12 (I) I-Cache */
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mcr p15, 0, r0, c1, c0, 0
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mcr p15, 0, r0, c8, c7, 0 /* flush v4 TLB */
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mov r0, #0
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mov pc, r9
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#endif
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/*
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*************************************************************************
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*
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* Interrupt handling
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*
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*************************************************************************
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*/
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@
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@ IRQ stack frame.
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@
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#define S_FRAME_SIZE 72
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#define S_OLD_R0 68
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#define S_PSR 64
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#define S_PC 60
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#define S_LR 56
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#define S_SP 52
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#define S_IP 48
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#define S_FP 44
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#define S_R10 40
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#define S_R9 36
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#define S_R8 32
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#define S_R7 28
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#define S_R6 24
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#define S_R5 20
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#define S_R4 16
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#define S_R3 12
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#define S_R2 8
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#define S_R1 4
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#define S_R0 0
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#define MODE_SVC 0x13
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#define I_BIT 0x80
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/*
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* use bad_save_user_regs for abort/prefetch/undef/swi ...
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*/
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.macro bad_save_user_regs
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/* carve out a frame on current user stack */
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sub sp, sp, #S_FRAME_SIZE
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/* Save user registers (now in svc mode) r0-r12 */
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stmia sp, {r0 - r12}
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ldr r2, IRQ_STACK_START_IN
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/* get values for "aborted" pc and cpsr (into parm regs) */
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ldmia r2, {r2 - r3}
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/* grab pointer to old stack */
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add r0, sp, #S_FRAME_SIZE
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add r5, sp, #S_SP
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mov r1, lr
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/* save sp_SVC, lr_SVC, pc, cpsr */
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stmia r5, {r0 - r3}
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/* save current stack into r0 (param register) */
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mov r0, sp
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.endm
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.macro get_bad_stack
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ldr r13, IRQ_STACK_START_IN @ setup our mode stack
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/* save caller lr in position 0 of saved stack */
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str lr, [r13]
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/* get the spsr */
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mrs lr, spsr
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/* save spsr in position 1 of saved stack */
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str lr, [r13, #4]
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/* prepare SVC-Mode */
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mov r13, #MODE_SVC
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@ msr spsr_c, r13
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/* switch modes, make sure moves will execute */
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msr spsr, r13
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/* capture return pc */
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mov lr, pc
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/* jump to next instruction & switch modes. */
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movs pc, lr
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.endm
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.macro get_bad_stack_swi
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/* space on current stack for scratch reg. */
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sub r13, r13, #4
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/* save R0's value. */
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str r0, [r13]
|
|
ldr r13, IRQ_STACK_START_IN @ setup our mode stack
|
|
/* save caller lr in position 0 of saved stack */
|
|
str lr, [r0]
|
|
/* get the spsr */
|
|
mrs r0, spsr
|
|
/* save spsr in position 1 of saved stack */
|
|
str lr, [r0, #4]
|
|
/* restore r0 */
|
|
ldr r0, [r13]
|
|
/* pop stack entry */
|
|
add r13, r13, #4
|
|
.endm
|
|
|
|
/*
|
|
* exception handlers
|
|
*/
|
|
.align 5
|
|
undefined_instruction:
|
|
get_bad_stack
|
|
bad_save_user_regs
|
|
bl do_undefined_instruction
|
|
|
|
.align 5
|
|
software_interrupt:
|
|
get_bad_stack_swi
|
|
bad_save_user_regs
|
|
bl do_software_interrupt
|
|
|
|
.align 5
|
|
prefetch_abort:
|
|
get_bad_stack
|
|
bad_save_user_regs
|
|
bl do_prefetch_abort
|
|
|
|
.align 5
|
|
data_abort:
|
|
get_bad_stack
|
|
bad_save_user_regs
|
|
bl do_data_abort
|
|
|
|
.align 5
|
|
not_used:
|
|
get_bad_stack
|
|
bad_save_user_regs
|
|
bl do_not_used
|
|
|
|
.align 5
|
|
irq:
|
|
get_bad_stack
|
|
bad_save_user_regs
|
|
bl do_irq
|
|
|
|
.align 5
|
|
fiq:
|
|
get_bad_stack
|
|
bad_save_user_regs
|
|
bl do_fiq
|
|
#endif /* CONFIG_NAND_SPL */
|